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Modeling of a long-period fiber-optic grating assisted surface Plasmon resonance refractive index sensor

机译:长周期光纤光栅辅助表面等离子体共振折射率传感器的建模

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A fiber-optic refractive index sensor assisted surface Plasmon resonance of metal dielectric layer around a long-period fiber-optic grating with hollow fiber core has been proposed and comprehensively analyzed. Its operation principle is based on the efficient energy transfer between the fiber waveguide mode and the co-directional surface Plasmon waves excited with a long-period fiber-optic grating properly designed by the light refracted through the interface between the waveguide area and the metal dielectric film. The long-period fiber-optic grating is fabricated on a waveguide area of a specially designed fiber-optic with hollow fiber core. Simulations have been carried out in coupled mode theory of fiber-optic gratings in the wavelength ranges from 1500 to 1600nm, and for sensing characteristics of refractive index. Unlike a previous proposed fiber Bragg grating fabricated on this kind of fiber, t the sensitivity of the long-period fiber-optic grating SPR refractive index sensor is much higher than that of a FBG in the same structure. The proposed long-period fiber-optic refractive index sensor assisted surface Plasmon resonance is compact, light weight, and highly sensitive with a large sensing range.
机译:提出并综合分析了光纤折射率传感器辅助的长周期光纤光栅中空金属介电层的表面等离子体共振。其工作原理基于光纤波导模式与同向表面等离子波之间的有效能量传递,该等离子体波由适当设计的长周期光纤光栅激发,该光栅通过通过波导区域和金属电介质之间的界面折射而来电影。长周期光纤光栅是在具有空心光纤芯的特殊设计的光纤的波导区域上制造的。已经在波长范围从1500到1600nm的光纤光栅的耦合模式理论中进行了仿真,并用于检测折射率的特性。与先前提出的在这种光纤上制造的光纤布拉格光栅不同,在相同结构中,长周期光纤光栅SPR折射率传感器的灵敏度远远高于FBG。所提出的长周期光纤折射率传感器辅助的表面等离子体共振是紧凑的,重量轻的并且具有大的感测范围的高度灵敏的。

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